Issue 10, 2024

Lithographic convex pattern as a wavelength-independent light extraction structure for efficient organic light-emitting diodes

Abstract

Improving light extraction efficiency is crucial for the practical use of organic light-emitting diodes (OLEDs). Despite numerous reported methods for light extraction, designing a wavelength-independent structure to effectively extract trapped photons from broadband emission OLEDs remains a challenge. In this study, we introduce a convex indium tin oxide (ITO) pattern as a straightforward and cost-efficient solution for light extraction in OLEDs. This technique involves micrometer-scale inclined planes along the ITO convex squares, disrupting the internal waveguiding of light through geometrical optics and enabling wavelength-independent light extraction. Consequently, we observe substantial enhancements in the external quantum efficiency of blue, green, red, and near-infrared OLEDs by 34.5%, 22.4%, 28.6%, and 31.3%, respectively. Moreover, the patterning method for the ITO is fully compatible with existing lithographic production lines, offering a scalable and promising approach for mass production.

Graphical abstract: Lithographic convex pattern as a wavelength-independent light extraction structure for efficient organic light-emitting diodes

Supplementary files

Article information

Article type
Paper
Submitted
04 Jan 2024
Accepted
12 Feb 2024
First published
13 Feb 2024

J. Mater. Chem. C, 2024,12, 3474-3481

Lithographic convex pattern as a wavelength-independent light extraction structure for efficient organic light-emitting diodes

Z. Qu, Y. Wang, M. Song, W. Liu, J. Yan, S. Meng, M. Li, S. Li, D. Zhou, Y. Chi and L. Liao, J. Mater. Chem. C, 2024, 12, 3474 DOI: 10.1039/D4TC00038B

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